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Human cytomegalovirus gene expression in long-term infected glioma stem cells
Estefania Fiallos1, Jonathon Judkins1, Lisa Matlaf1
1California Pacific Medical Center Research Institute, San Francisco, California, United States of America.
Abstract:
The most common adult primary brain tumor, glioblastoma (GBM), is characterized by fifteen months median patient survival and has no clear etiology. We and others have identified the presence of human cytomegalovirus (HCMV) gene products endogenously expressed in GBM tissue and primary cells, with a subset of viral genes being consistently expressed in most samples. Among these viral genes, several have important oncomodulatory properties, regulating tumor stemness, proliferation, immune evasion, invasion and angiogenesis. These findings lead us to hypothesize that a specific HCMV gene signature may be associated with GBM pathogenesis. To investigate this hypothesis, we used glioma cell lines and primary glioma stem-like cells (GSC) infected with clinical and laboratory HCMV strains and measured relative viral gene expression levels along several time points up to 15 weeks post-infection. While HCMV gene expression was detected in several infected glioma lines through week 5 post-infection, only HCMV-infected GSC expressed viral gene products 15 weeks post-infection. Efficiency of infection across time was higher in GSC compared to cell lines. Importantly, HCMV-infected GSC outlived their uninfected counterparts, and this extended survival was paralleled by increased tumorsphere frequency and upregulation of stemness regulators, such as SOX2, p-STAT3, and BMX (a novel HCMV target identified in this study). Interleukin 6 (IL-6) treatment significantly upregulated HCMV gene expression in long-term infected glioma cultures, suggesting that pro-inflammatory signaling in the tumor milieu may further augment HCMV gene expression and subsequent tumor progression driven by viral-induced cellular signaling. Together, our data support a critical role for long-term, low-level HCMV infection in promoting survival, stemness, and proliferation of GSC that could significantly contribute to GBM pathogenesis.
Insights
Human cytomegalovirus (HCMV) infection promotes glioblastoma stem cell survival and proliferation. Long-term HCMV infection in glioma stem cells enhances their stemness and extends patient survival, suggesting a role in glioblastoma pathogenesis.
Area of Science:
- Neuro-oncology
- Virology
- Cancer Biology
Background:
- Glioblastoma (GBM) is the most common adult primary brain tumor with poor prognosis.
- Human cytomegalovirus (HCMV) gene products are found in GBM tissues.
- HCMV genes possess oncomodulatory properties affecting tumor progression.
Purpose of the Study:
- To investigate the hypothesis that a specific HCMV gene signature is associated with GBM pathogenesis.
- To determine the role of long-term HCMV infection in glioma stem-like cells (GSC).
Main Methods:
- Infection of glioma cell lines and GSC with HCMV strains.
- Measurement of viral gene expression over 15 weeks.
- Assessment of GSC survival, stemness markers, and tumorsphere formation.
Main Results:
- HCMV-infected GSC survived longer than uninfected counterparts.
- Long-term HCMV infection upregulated stemness regulators (SOX2, p-STAT3, BMX) in GSC.
- Pro-inflammatory signaling (IL-6) enhanced HCMV gene expression in glioma cultures.
Conclusions:
- Long-term, low-level HCMV infection promotes GSC survival, stemness, and proliferation.
- HCMV infection may significantly contribute to GBM pathogenesis.
- HCMV represents a potential therapeutic target in glioblastoma treatment.
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